CYCLIC STRESS-STRAIN CHARACTERISTICS OF TI-NI AND TI-NI-CU SHAPE-MEMORY ALLOYS
Citation
B. Strnadel et al., CYCLIC STRESS-STRAIN CHARACTERISTICS OF TI-NI AND TI-NI-CU SHAPE-MEMORY ALLOYS, Materials science & engineering. A, Structural materials: properties, microstructure and processing, 202(1-2), 1995, pp. 148-156
Categorie Soggetti
Material Science
SICI code
0921-5093(1995)202:1-2<148:CSCOTA>2.0.ZU;2-G
Abstract
The authors have examined the responses of three types of Ti-Ni and th
ree types of Ti-Ni-Cu shape memory alloys in a pseudoelastic state to
mechanical cycling in hard cycles with a constant e(max) and in soft c
ycles with a constant sigma(max). It was found that the transformation
stress of the B2 parent phase into martensite and the hysteresis (or
the amount of energy dissipated during one cycle) diminish while the r
esidual deformation increases as the number of cycles grows. Although
the maximum deformation is greater in a soft than in a hard cycle, the
critical stress for inducing martensite, at least over the first 10 c
ycles, declines more slowly in soft than in hard loading cycles. Terna
ry Ti-Ni-Cu alloys displayed lower transformation deformations and tra
nsformation stresses than binary Ti-Ni alloys. In both Ti-Ni and Ti-Ni
-Cu alloys, higher nickel contents were found to increase the critical
stress for slip, thereby suppressing the residual plastic deformation
after the specimens were unloaded and helping to stabilize the cyclic
stress-strain curves.